Laboratory of Cell Technology, Faculty of Biotechnology, Agricultural University of Athens, Iera Odos 75, 11855 Athens, Greece.
Laboratory of Cell Technology, Faculty of Biotechnology, Agricultural University of Athens, Iera Odos 75, 11855 Athens, Greece.
Talanta. 2017 Aug 1;170:69-73. doi: 10.1016/j.talanta.2017.03.098. Epub 2017 Mar 31.
Current receptor-binding assays for dopamine do not measure the in vitro whole cellular response against dopamine or potential agonist/antagonist molecules. We herewith report the development of a novel functional assay concept for studying the in vitro interaction of the neurotransmitter dopamine with neural cells bearing dopamine receptors. The concept is based on the ultra-rapid measurement of changes in the electric properties of cultured N2a mouse neuroblastoma cells (corresponding to cumulative changes of the cell membrane potential). A close relationship between cumulative cell membrane potential and dopamine concentration was observed. Membrane depolarization was observed at nanomolar dopamine concentrations, while hyperpolarization was associated with micromolar ones. Treatment with the dopamine D2-receptor antagonist eticlopride resulted to a concentration-dependent membrane depolarization. Treatment with sodium chloride caused considerable weakening of the dopamine-associated hyperpolarization effect. The observed bioelectric response to dopamine was highly inversely correlated with the pattern of dopamine release-uptake balance by N2a cells, as determined with cyclic voltammetry. The bioelectric approach was also used to evaluate the dopaminergic activity of chaste tree (Vitex agnus-castus) extracts. The novel assay concept offers promising perspectives for the development of advanced companion diagnostics system for the high throughput, fast functional characterization of neurotransmitter agonists and antagonists.
目前用于检测多巴胺的受体结合分析方法无法测量多巴胺或潜在激动剂/拮抗剂分子在体外对整个细胞的反应。在此,我们报告了一种研究神经递质多巴胺与具有多巴胺受体的神经细胞体外相互作用的新型功能分析概念。该概念基于培养的 N2a 小鼠神经母细胞瘤细胞(对应于细胞膜电位的累积变化)的电特性的超快速测量。观察到累积细胞膜电位与多巴胺浓度之间存在密切关系。在纳摩尔多巴胺浓度下观察到膜去极化,而在微摩尔浓度下观察到超极化。用多巴胺 D2 受体拮抗剂 eticlopride 处理会导致膜去极化呈浓度依赖性。用氯化钠处理会导致与多巴胺相关的超极化作用明显减弱。用循环伏安法测定,观察到的对多巴胺的生物电反应与 N2a 细胞多巴胺释放-摄取平衡的模式高度负相关。该生物电方法还用于评估贞节树(Vitex agnus-castus)提取物的多巴胺能活性。该新型分析概念为开发先进的伴随诊断系统,用于高通量、快速功能鉴定神经递质激动剂和拮抗剂提供了有前景的思路。